Synergistic inhibition effect of fluoride and caffeiate on LAZ931 Mg alloy corrosion

IF 15.8 1区 材料科学 Q1 METALLURGY & METALLURGICAL ENGINEERING
Yishun Tian, Tiancai Kong, Shuya Mao, Di Mei, Zhipeng Liu, Jinxue Liu, Yang Xiao, Liguo Wang, Shijie Zhu, Shaokang Guan
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引用次数: 0

Abstract

Improving the corrosion resistance of magnesium-lithium (Mg-Li) alloys is pivotal for expanding their prospective utilization in lightweight structural materials. This research focused on evaluating the corrosion inhibition effectiveness of a composite corrosion inhibitor comprising sodium fluoride (NaF) and caffeic acid (CA) on the LAZ931 alloy in a 3.5 wt.% NaCl solution. The results demonstrated that NaF alone is insufficient to prevent localized corrosion of the alloy. Remarkably, the addition of 0.001 M caffeic acid to a 0.05 M NaF solution significantly increased the corrosion inhibition efficiency from 54.36 % to 88 %. This substantial improvement in corrosion resistance can be credited to the formation of the dense protective NaMgF3 deposition products on the sample surface. This study offers a novel approach to the design of corrosion inhibitors for duplex Mg alloys, emphasizing the synergistic effect between NaF and CA in augmenting corrosion protection.

Abstract Image

氟和咖啡因对LAZ931镁合金腐蚀的协同缓蚀作用
提高镁锂合金的耐腐蚀性能是扩大其在轻量化结构材料中应用前景的关键。研究了含氟化钠(NaF)和咖啡酸(CA)的复合缓蚀剂在3.5 wt.% NaCl溶液中对LAZ931合金的缓蚀效果。结果表明,NaF本身不足以防止合金的局部腐蚀。在0.05 M NaF溶液中加入0.001 M咖啡酸,缓蚀率从54.36%提高到88%。耐腐蚀性能的显著提高可归功于在样品表面形成了致密的保护性NaMgF3沉积产物。该研究为双相镁合金缓蚀剂的设计提供了一种新的途径,强调了NaF和CA在增强腐蚀防护方面的协同作用。
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来源期刊
Journal of Magnesium and Alloys
Journal of Magnesium and Alloys Engineering-Mechanics of Materials
CiteScore
20.20
自引率
14.80%
发文量
52
审稿时长
59 days
期刊介绍: The Journal of Magnesium and Alloys serves as a global platform for both theoretical and experimental studies in magnesium science and engineering. It welcomes submissions investigating various scientific and engineering factors impacting the metallurgy, processing, microstructure, properties, and applications of magnesium and alloys. The journal covers all aspects of magnesium and alloy research, including raw materials, alloy casting, extrusion and deformation, corrosion and surface treatment, joining and machining, simulation and modeling, microstructure evolution and mechanical properties, new alloy development, magnesium-based composites, bio-materials and energy materials, applications, and recycling.
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